50010
50011
50014
50020
50021
50030
50031
50041
50040
12001-872EA
644.85
USD
InStock
12001-872
12001-874
12001-876
12001-878
12001-880
12001-882
12001-884
12001-888
12001-886
SeaKem® Agaroses for Protein Applications
Media for Microbiology
Dehydrated Media for Microbiology
Lonza offers a range of agarose types designed for specific, high performance protein applications. Safer and easier to work with than polyacrylamide, Agarose effectively separates high molecule weight proteins and protein complexes, and provides high recovery yields with simple procedures.
- HE Agarose provides enhanced resolution in immunoelectrophoresis (IEP) and serum protein electrophoresis
- HEEO Agarose is a very high EEO agarose that is useful in applications requiring significant cathodal migration
- HGT Agarose is a high-gelling temperature (42° C) agarose that exhibits high gel strength and clarity
- ME Agarose is a moderate EEO agarose that is often used for serum protein electrophoresis
Very large proteins (subunit sizes >200 kDa) are difficult to electrophoretically separate on polyacrylamide gels
SeaKem® HE Agarose is a high EEO agarose that provides enhanced resolution in immunoelectrophoresis (IEP), crossed-IEP, counterimmunoelectrophoresis (CIEP), and serum protein electrophoresis.
SeaKem® HEEO Agarose is a very high EEO agarose that is useful in applications requiring significant cathodal migration, such as IEP of IgG and IgM. SeaKem® HEEO Agarose can also be used to blend with a lower EEO agarose to achieve a specific EEO value.
SeaKem® HGT Agarose is a high-gelling temperature (42° C) agarose that exhibits high gel strength and clarity. SeaKem® HGT Agarose is primarily used in protein electrophoresis applications such as counterimmunoelectrophoresis and crossed immunoelectrophoresis.
Accordingly, Lonza offers a range of agarose types designed for specific, high performance protein applications. SeaKem® agaroses effectively separates high molecule weight proteins and protein complexes, and provides high recovery yields with simple procedures.